Baltsavias EP (1999) A comparison between photogrammetry and laser scanning. ISPRS J
Photogrammetry Remote Sen 54:83–94
Bellian JA, Kerans C, Jennette DC (2005) Digital outcrop models: applications of terrestrial
scanning LiDAR technology in stratigraphic modelling. J Sediment Res 75:166–176
Blair JB, Rabine DL, Hofton MA (1999) The laser vegetation imaging sensor: a medium-altitude,
digitization-only, airborne laser altimeter for mapping vegetation and topography. ISPRS J
Photogrammetry Remote Sens 54:115–122
Blanchon P, Jones B, Kalbfleisch W (1997) Anatomy of a fringing reef around Grand Cayman:
storm rubble, not coral framework. J Sediment Res 67:1–16
Bonisteel JM, Nayegandhi A, Wright CW, Brock JC, Nagle DB (2009) Experimental advanced
airborne research LiDAR (EAARL) data processing manual. U.S. Geological Survey OpenFile Report 2009-1078, p 38
Braithwaite CJR, Montaggioni LF, Camoin GF, Dalmasso H, Dullo WC, Mangini A (2000)
Origins and development of Holocene coral reefs: a revisited model based on reef boreholes
in the Seychelles, Indian Ocean. Int J Earth Sci 89:431–445
Brock J, Sallenger A (2000) Airborne topographic mapping for coastal science and resource
management. USGS Open-File Report 01-46
Brock J, Wright CW, Hernandez R, Thompson P (2006) Airborne LiDAR sensing of massive
stony coral colonies on patch reefs in the Northern Florida reef tract. Remote Sens Environ
104:31–42
Brock JC, Palaseanu-Lovejoy M, Wright CW, Nayegandhi A (2008) Patch-reef morphology as a
proxy for Holocene sea-level variability, Northern Florida Keys, USA. Coral Reefs
27:555–568
Brock JC, Purkis SJ (2009b) The emerging role of LiDAR remote sensing in coastal research and
resource management. J Coastal Res 53:1–5
Brock JC, Sallenger AH, Krabill WB, Swift RN, Wright CW (2001) Recognition of fiducial
surfaces in LiDAR surveys of coastal topography. Photogrammetric Eng Remote Sens
67:1245–1258
Brock JC, Wright CW, Clayton TD, Nayegandhi A (2004) LiDAR optical rugosity of coral reefs
in Biscayne National Park, Florida. Coral Reefs 23:48–59
Cecchi G, Palombi L, Mochi I, Lognoli D, Raimondi V, Tirelli D (2004) LiDAR measurement of
the attenuation coefficient of natural waters. In: Proceedings of the 22nd international laser
radar conference, European Space Agency, Paris, p 827
Churnside J, Hunter J (1997) Laser remote sensing of epipelagic fishes. In: Proceedings of laser
remote sensing of natural waters: from theory to practice, SPIE, vol 2964., pp 38–53
Collin A, Archambault P, Long B (2008) Mapping the shallow water seabed habitat with
SHOALS. IEEE Trans Geosci Remote Sens 46:2947–2955
Costa BM, Battista TA, Pittman SJ (2009) Comparative evaluation of airborne LiDAR and shipbased multibeam SoNAR bathymetry and intensity for mapping coral reef ecosystems.
Remote Sens Environ 113:1082–1100
Churnside JH, Demer DA, Mahmoudi B (2003) A comparison of LiDAR and echosounder
measurements of fish schools in the Gulf of Mexico. ICES J Mar Sci 60:147–154
Dartnell P (2000) Applying remote sensing techniques to map seafloor geology/habitat
relationships. Master’s thesis, San Francisco State University, CA
Dekker AG (1993) Detection of optical water quality parameters for eutrophic waters by high
resolution remote sensing. PhD thesis, Vrije Universiteit Amsterdam. ISBN 90-9006234-3
Dubayah RO, Drake JB (2000) LiDAR remote sensing of forestry. J Forest 98:44–46
Durand D, Bijaoui J, Cauneau F (2000) Optical remote sensing of shallow-water environmental
parameters: a feasibility study. Remote Sens Environ 73:152–161
Fabricius K, De’ath G, McCook L, Turak E, Williams DM (2005) Changes in algal, coral and fish
assemblages along water quality gradients on the inshore Great Barrier Reef. Mar Pollut Bull
51:384–398
Fang H-T, Huang D-S (2004) Noise reduction in LiDAR signals based on discrete wavelet
transform. Optics Communications 233:67–76
5 LiDAR Overview
139
Photogrammetry Remote Sen 54:83–94
Bellian JA, Kerans C, Jennette DC (2005) Digital outcrop models: applications of terrestrial
scanning LiDAR technology in stratigraphic modelling. J Sediment Res 75:166–176
Blair JB, Rabine DL, Hofton MA (1999) The laser vegetation imaging sensor: a medium-altitude,
digitization-only, airborne laser altimeter for mapping vegetation and topography. ISPRS J
Photogrammetry Remote Sens 54:115–122
Blanchon P, Jones B, Kalbfleisch W (1997) Anatomy of a fringing reef around Grand Cayman:
storm rubble, not coral framework. J Sediment Res 67:1–16
Bonisteel JM, Nayegandhi A, Wright CW, Brock JC, Nagle DB (2009) Experimental advanced
airborne research LiDAR (EAARL) data processing manual. U.S. Geological Survey OpenFile Report 2009-1078, p 38
Braithwaite CJR, Montaggioni LF, Camoin GF, Dalmasso H, Dullo WC, Mangini A (2000)
Origins and development of Holocene coral reefs: a revisited model based on reef boreholes
in the Seychelles, Indian Ocean. Int J Earth Sci 89:431–445
Brock J, Sallenger A (2000) Airborne topographic mapping for coastal science and resource
management. USGS Open-File Report 01-46
Brock J, Wright CW, Hernandez R, Thompson P (2006) Airborne LiDAR sensing of massive
stony coral colonies on patch reefs in the Northern Florida reef tract. Remote Sens Environ
104:31–42
Brock JC, Palaseanu-Lovejoy M, Wright CW, Nayegandhi A (2008) Patch-reef morphology as a
proxy for Holocene sea-level variability, Northern Florida Keys, USA. Coral Reefs
27:555–568
Brock JC, Purkis SJ (2009b) The emerging role of LiDAR remote sensing in coastal research and
resource management. J Coastal Res 53:1–5
Brock JC, Sallenger AH, Krabill WB, Swift RN, Wright CW (2001) Recognition of fiducial
surfaces in LiDAR surveys of coastal topography. Photogrammetric Eng Remote Sens
67:1245–1258
Brock JC, Wright CW, Clayton TD, Nayegandhi A (2004) LiDAR optical rugosity of coral reefs
in Biscayne National Park, Florida. Coral Reefs 23:48–59
Cecchi G, Palombi L, Mochi I, Lognoli D, Raimondi V, Tirelli D (2004) LiDAR measurement of
the attenuation coefficient of natural waters. In: Proceedings of the 22nd international laser
radar conference, European Space Agency, Paris, p 827
Churnside J, Hunter J (1997) Laser remote sensing of epipelagic fishes. In: Proceedings of laser
remote sensing of natural waters: from theory to practice, SPIE, vol 2964., pp 38–53
Collin A, Archambault P, Long B (2008) Mapping the shallow water seabed habitat with
SHOALS. IEEE Trans Geosci Remote Sens 46:2947–2955
Costa BM, Battista TA, Pittman SJ (2009) Comparative evaluation of airborne LiDAR and shipbased multibeam SoNAR bathymetry and intensity for mapping coral reef ecosystems.
Remote Sens Environ 113:1082–1100
Churnside JH, Demer DA, Mahmoudi B (2003) A comparison of LiDAR and echosounder
measurements of fish schools in the Gulf of Mexico. ICES J Mar Sci 60:147–154
Dartnell P (2000) Applying remote sensing techniques to map seafloor geology/habitat
relationships. Master’s thesis, San Francisco State University, CA
Dekker AG (1993) Detection of optical water quality parameters for eutrophic waters by high
resolution remote sensing. PhD thesis, Vrije Universiteit Amsterdam. ISBN 90-9006234-3
Dubayah RO, Drake JB (2000) LiDAR remote sensing of forestry. J Forest 98:44–46
Durand D, Bijaoui J, Cauneau F (2000) Optical remote sensing of shallow-water environmental
parameters: a feasibility study. Remote Sens Environ 73:152–161
Fabricius K, De’ath G, McCook L, Turak E, Williams DM (2005) Changes in algal, coral and fish
assemblages along water quality gradients on the inshore Great Barrier Reef. Mar Pollut Bull
51:384–398
Fang H-T, Huang D-S (2004) Noise reduction in LiDAR signals based on discrete wavelet
transform. Optics Communications 233:67–76
5 LiDAR Overview
139
